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Flicker Mitigation by Individual Pitch Control of Variable Speed Wind Turbines With DFIG

机译:采用DFIG的变速风力发电机通过单独变桨控制来减轻闪烁

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Due to the wind speed variation, wind shear and tower shadow effects, grid connected wind turbines are the sources of power fluctuations which may produce flicker during continuous operation. This paper presents a model of an MW-level variable-speed wind turbine with a doubly fed induction generatorto investigate the flicker emission and mitigation issues. An individual pitch control (IPC) strategy is proposed to reduce the flicker emission at different wind speed conditions. The IPC scheme is proposed and the individual pitch controller is designed according to the generator active power and the azimuth angle of the wind turbine. The simulations are performed on the NREL (National Renewable Energy Laboratory) 1.5-MW upwind reference wind turbine model. Simulation results show that damping the generator active power by IPC is an effective means for flicker mitigation of variable speed wind turbines during continuous operation.
机译:由于风速变化,风切变和塔影效应,并网风力涡轮机是功率波动的源头,在连续运行期间可能会产生闪烁。本文提出了一种带有双馈感应发电机的兆瓦级变速风力发电机模型,以研究闪变排放和缓解问题。提出了一种独立的变桨控制(IPC)策略,以减少不同风速条件下的闪烁辐射。提出了IPC方案,并根据发电机的有功功率和风力发电机的方位角设计了单个变桨控制器。在NREL(国家可再生能源实验室)1.5 MW迎风参考风力涡轮机模型上进行了仿真。仿真结果表明,通过IPC抑制发电机的有功功率是缓解连续运行期间变速风轮机闪烁的有效方法。

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